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US Patent 10539663 Light detecting and ranging (LIDAR) signal processing circuitry

Patent 10539663 was granted and assigned to SZ DJI Technology Co. Ltd. on January, 2020 by the United States Patent and Trademark Office.

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Patent
Patent
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Patent attributes

Patent Applicant
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SZ DJI Technology Co. Ltd.
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Current Assignee
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SZ DJI Technology Co. Ltd.
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
105396630
Patent Inventor Names
Xiaoping Hong0
Wenjin Pu0
Xiang Liu0
Zhipeng Zhan0
Date of Patent
January 21, 2020
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Patent Application Number
157852430
Date Filed
October 16, 2017
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Patent Citations Received
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US Patent 11585908 Optical measuring device comprising a measuring unit to generate time information representing an elapsed time in accordance with pulse signal output from a light receiving group
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US Patent 12117974 Methods and systems for construct identification and analysis
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US Patent 11933967 Distally actuated scanning mirror
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US Patent 11585907 Optical measuring device comprising a measuring unit to generate time information representing an elapsed time in accordance with pulse signal output from a light receiving group
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Patent Primary Examiner
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Luke D Ratcliffe
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Patent abstract

Introduced here are techniques for implementing a comparator-based LIDAR system with improved components, such as an improved high-speed comparator circuit, to acquire depth information from the surroundings of an unmanned moving object (e.g., a UAV). In various embodiments, the LIDAR system includes an amplifier module with different configurations of anti-saturation circuitry. The LIDAR system may further include various feedback control mechanisms for noise interference reduction and timing measurement compensation including, for example, dynamic gain adjustment of the photodetector module, and/or dynamic adjustment of comparators' thresholds. Among other components, the disclosed comparator circuit can provide the LIDAR system with a wide dynamic range, preventing large signal amplification saturation while also providing sufficient magnification of small signals.

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